Secondary water supply purification device

By introducing mechanisms to assist in cleaning impurities, detecting purification effects and sterilization treatment in the secondary water supply purification device, the problems of blockage and inadequate purification of the device are solved, and the purification efficiency and water quality guarantee are improved.

CN223060757UActive Publication Date: 2025-07-04SINO-US AIPAGE (SHANGHAI) FLUID SYSTEMS CO LTD
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Patent Information

Application Number
CN202421764046.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-24
Publication Date
2025-07-04
Estimated Expiration
2034-07-24

AI Technical Summary

Technical Problem

The secondary water supply purification device is prone to clogging after a long period of filtration and cannot detect inadequate water resources in time, resulting in a decrease in purification effect.

Method used

A secondary water supply purification device including a purification cylinder, a filter mechanism, an auxiliary mechanism, a detection mechanism and an output mechanism is designed. The auxiliary mechanism assists in cleaning impurities, the detection mechanism detects the purification effect, and sterilizes the output mechanism.

Benefits of technology

Effectively prevent clogging of filter components, improve purification rate, ensure the quality of purified water, realize re-filtration and sterilization of insufficiently purified water, and improve purification efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a secondary water supply purification device which comprises a purification barrel, a filtering mechanism is installed on the inner wall of the purification barrel, auxiliary mechanisms make contact with the two sides of the filtering mechanism, a detection mechanism is connected to the lower portion of the purification barrel, and an output mechanism is installed at one end of the detection mechanism. According to the secondary water supply purification device, impurities filtered by the secondary water supply purification device for a long time can be conveniently adsorbed and cleaned in an auxiliary mode, the situation that a filtering part of the secondary water supply purification device is blocked is reduced, and follow-up water resource purification of the secondary water supply purification device is facilitated; according to the secondary water supply purification device, water resources purified by the secondary water supply purification device can be conveniently detected, the water resources which are not fully purified can be conveyed to the purification barrel again to be filtered and purified, and the secondary water supply purification rate can be improved; and impurities in secondary water supply can be filtered.
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Description

Technical Field

[0001] The utility model relates to the technical field of purification devices, and more specifically, to a secondary water supply purification device. Background Art

[0002] The secondary water supply purification device is a purification device designed specifically for the secondary water supply system. It can deeply process the water source before it enters the user terminal to ensure the safety and hygiene of the water supply.

[0003] However, during long-term filtration, a large amount of impurities are likely to adhere to the water resources, causing blockages in the filtration components of the secondary water supply purification device, which can easily affect the subsequent purification of water resources by the secondary water supply purification device. At the same time, the secondary water supply purification device cannot detect the purified water, so it is impossible to timely discover the inadequately purified water resources.

[0004] Regarding the problems in the related art, no effective solutions have been proposed yet. Summary of the Utility Model

[0005] (I) Technical Problems to be Solved

[0006] In view of the deficiencies of the prior art, the utility model provides a secondary water supply purification device, which has the advantages of solving the above technical problems, and thus solves the problems in the prior art.

[0007] (II) Technical Solutions

[0008] To achieve the advantages of the above technical problems, the specific technical solutions adopted by the utility model are as follows:

[0009] A secondary water supply purification device includes a purification cylinder. A filtration mechanism is installed on the inner wall of the purification cylinder, and auxiliary mechanisms are in contact with both sides of the filtration mechanism;

[0010] A detection mechanism is connected below the purification cylinder, and an output mechanism is installed at one end of the detection mechanism.

[0011] Furthermore, the filtration mechanism includes a number of filter frames fixedly installed on the inner wall of the purification cylinder. Activated carbon plates and ion exchange resin plates are respectively placed on the inner walls of the filter frames. A replacement opening is provided on one side of the purification cylinder. A shielding cover is installed on the inner wall of the replacement opening. A number of locking buckles are fixedly connected between the shielding cover and the surface of the purification cylinder. An input pipe penetrates through the upper part of the purification cylinder.

[0012] Furthermore, the auxiliary mechanism includes several electric telescopic rods fixedly arranged on the inner wall of the purification cylinder. The output end of the electric telescopic rod is fixedly connected with a fixing frame. An electric guide rail is fixedly installed below the fixing frame. An auxiliary frame is connected to the electric guide rail through a moving block. Part of the auxiliary frame contacts both sides of the filter frame. One end of the auxiliary frame is fixed with an adsorption hood. An adsorption hose penetrates through the upper part of the adsorption hood. One end of the adsorption hose penetrates through the purification cylinder and is connected with an adsorption pump. The output end of the adsorption pump is connected with a collection box.

[0013] Furthermore, the detection mechanism includes an output pipe penetrating through the lower part of the purification cylinder. One end of the output pipe is connected with a detection box. A detection instrument penetrates through one side of the detection box. The detection instrument is electrically connected with a display instrument. A delivery pump is connected to one side of the detection box. The output end of the delivery pump is connected with a connecting pipe. One end of the connecting pipe penetrates through the upper part of the shielding cover.

[0014] Furthermore, the output mechanism includes a control valve I penetrating through one side of the detection box. The output end of the control valve I is connected with a delivery pipe. The delivery end of the delivery pipe is connected with a disinfector. Both output ends of the disinfector are connected with liquid extraction pumps. The output end of the liquid extraction pump is connected with a liquid discharge pipe. The output end of the liquid discharge pipe is connected with a control valve II. The output end of the control valve II is connected with a discharge pipe.

[0015] Furthermore, a support seat is fixedly connected below the liquid extraction pump. Several support plates are fixedly arranged below the purification cylinder. One side of one of the support plates is connected with the display instrument. A base is fixedly connected below the support plate and the support seat.

[0016] Furthermore, a cleaning brush is installed on the inner wall of the adsorption hood. The cleaning brush contacts the upper part of the activated carbon plate.

[0017] (III) Beneficial effects

[0018] Compared with the prior art, the present utility model has the following beneficial effects:

[0019] (1) By means of the auxiliary mechanism arranged in the filtering mechanism, it is convenient to assist in adsorbing and cleaning the impurities filtered by the secondary water supply purification device for a long time, reducing the blockage of the filtering components of the secondary water supply purification device, which is beneficial to the subsequent purification of water resources by the secondary water supply purification device. At the same time, the detection mechanism arranged in the purification cylinder is convenient for detecting the water resources purified by the secondary water supply purification device, which is beneficial to re-transporting the insufficiently purified water resources to the purification cylinder for filtration and purification, and is beneficial to improving the purification rate of the secondary water supply.

[0020] (2) By means of the filtering mechanism arranged in the purification cylinder, it is convenient to filter and purify the secondary water supply, which is beneficial to filtering the impurities in the secondary water supply. At the same time, the output mechanism arranged in the detection mechanism is convenient for assisting in sterilizing the purified water resources. Description of the drawings

[0021] To more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the following will briefly introduce the drawings required for use in the embodiments. Obviously, the drawings in the following description are only some embodiments of the present invention. For those of ordinary skill in the art, without creative efforts, other drawings can be obtained based on these drawings.

[0022] Figure 1 is a schematic structural diagram of the output mechanism of a secondary water supply purification device according to an embodiment of the present invention Figure 1 ;

[0023] Figure 2 is a schematic structural diagram of the output mechanism of a secondary water supply purification device according to an embodiment of the present invention Figure 2 ;

[0024] Figure 3 is a schematic cross-sectional structural diagram of a secondary water supply purification device according to an embodiment of the present invention;

[0025] Figure 4 is a schematic structural diagram of the detection mechanism of a secondary water supply purification device according to an embodiment of the present invention;

[0026] Figure 5 is a schematic structural diagram of the filtering mechanism of a secondary water supply purification device according to an embodiment of the present invention;

[0027] Figure 6 is a schematic structural diagram of the auxiliary mechanism of a secondary water supply purification device according to an embodiment of the present invention.

[0028] In the figure:

[0029] 1, purification cylinder; 2, filtering mechanism; 201, filter frame; 202, activated carbon plate; 203, ion exchange resin plate; 204, shielding cover; 205, input pipe; 206, lock; 3, auxiliary mechanism; 301, electric telescopic rod; 302, fixed frame; 303, electric guide rail; 304, auxiliary frame; 305, adsorption hood; 306, adsorption hose; 307, adsorption pump; 308, collection box; 4, detection mechanism; 401, output pipe; 402, detection box; 403, detection instrument; 404, display meter; 405, delivery pump; 406, connecting pipe; 5, output mechanism; 501, control valve one; 502, delivery pipe; 503, disinfector; 504, liquid extraction pump; 505, drain pipe; 506, control valve two; 507, discharge pipe; 6, support seat; 7, support plate; 8, base; 9, cleaning brush. Detailed implementation manners

[0030] To further illustrate the technical solution of the present application, the present utility model provides attached drawings, which are a part of the disclosure of the present utility model. They are mainly used to illustrate the implementation manners and can be used in conjunction with the relevant descriptions in the specification to explain the operating principles of the implementation manners. With reference to these contents, those of ordinary skill in the art should be able to understand other possible implementation manners and the advantages of the present utility model. The components in the drawings are not drawn to scale, and similar component symbols are usually used to represent similar components.

[0031] As Figure 5 - Figure 6 shown, the present utility model provides the following technical solution: A secondary water supply purification device includes a purification cylinder 1 for purifying the water of the secondary water supply. A filtering mechanism 2 is installed on the inner wall of the purification cylinder 1. The filtering mechanism 2 includes a plurality of filtering frames 201 fixedly installed on the inner wall of the purification cylinder 1. The number of the filtering frames 201 is two. An activated carbon plate 202 and an ion exchange resin plate 203 are respectively placed on the inner walls of the filtering frames 201. A replacement opening is provided on one side of the purification cylinder 1. A shielding cover 204 is installed on the inner wall of the replacement opening. Two sealing gaskets are installed on the shielding cover 204 during actual use. The sealing gaskets are in contact with the inner wall of the replacement opening. A plurality of locking latches 205 are fixedly connected between the shielding cover 204 and the surface of the purification cylinder 1. The number of the locking latches 205 is two. An input pipe 206 penetrates through the upper part of the purification cylinder 1;

[0032] Auxiliary mechanisms 3 are in contact with both sides of the filtering mechanism 2. The auxiliary mechanisms 3 include a plurality of electric telescopic rods 301 fixedly arranged on the inner wall of the purification cylinder 1. The number of the electric telescopic rods 301 is two. The output ends of the electric telescopic rods 301 are fixedly connected with fixing frames 302. An electric guide rail 303 is fixedly installed below the fixing frames 302. An auxiliary frame 304 is connected to the electric guide rail 303 through a moving block. Part of the auxiliary frame 304 is in contact with both sides of the filtering frame 201. One end of the auxiliary frame 304 is fixed with an adsorption cover 305 for adsorbing large particle impurities. An adsorption hose 306 penetrates through the upper part of the adsorption cover 305. One end of the adsorption hose 306 penetrates through the purification cylinder 1 and is connected with an adsorption pump 307. The output end of the adsorption pump 307 is connected with a collection box 308. The lower part of the collection box 308 is fixedly connected with the upper part of the purification cylinder 1. A cleaning brush 9 is installed on the inner wall of the adsorption cover 305. The cleaning brush 9 is in contact with the upper part of the activated carbon plate 202.

[0033] Specifically, by providing the filtering mechanism 2 in the purification cylinder 1, it is convenient to filter and purify the secondary water supply. At the same time, by providing the auxiliary mechanisms 3 in the filtering mechanism 2, it is convenient to assist in adsorbing and cleaning the impurities in the secondary water supply purification device during long-term filtration, reducing the situation that the filtering components of the secondary water supply purification device are blocked. At the same time, by providing the cleaning brush 9 in the adsorption cover 305, it is convenient to assist in cleaning the impurities attached to the surface of the activated carbon plate 202.

[0034] As Figure 1- Figure 4 As shown in Figure 4 , a detection mechanism 4 is connected below the purification cylinder 1. The detection mechanism 4 includes an output pipe 401 that penetrates below the purification cylinder 1. One end of the output pipe 401 is connected to a detection box 402. A detection instrument 403 penetrates through one side of the detection box 402. The detection instrument 403 has the same principle as the model DMS - 600 and is used to display and debug the data in the detected water quality. The detection instrument 403 is electrically connected to a display instrument 404. The display instrument 404 has the same principle as the model DMC - 211. One side of the detection box 402 is connected to a delivery pump 405. The output end of the delivery pump 405 is connected to a connecting pipe 406. One end of the connecting pipe 406 penetrates through the upper part of the purification cylinder 1;

[0035] An output mechanism 5 is installed at one end of the detection mechanism 4. The output mechanism 5 includes a control valve 501 that penetrates through one side of the detection box 402. The output end of the control valve 501 is connected to a delivery pipe 502. The delivery end of the delivery pipe 502 is connected to a disinfector 503. The disinfector 503 has the same principle as the model ISID - 80. Both output ends of the disinfector 503 are connected to a liquid extraction pump 504. The output end of the liquid extraction pump 504 is connected to a drain pipe 505. The output end of the drain pipe 505 is connected to a control valve 506. The output end of the control valve 506 is connected to a discharge pipe 507;

[0036] The control valve 506, the liquid extraction pump 504, the disinfector 503, the control valve 501, the delivery pump 405, the display instrument 404, the detection instrument 403, the adsorption pump 307, the electric guide rail 303, and the electric telescopic rod 301 are electrically connected to a controller during actual use. The controller, the control valve 506, the liquid extraction pump 504, the disinfector 503, the control valve 501, the delivery pump 405, the display instrument 404, the detection instrument 403, the adsorption pump 307, the electric guide rail 303, and the electric telescopic rod 301 are electrically connected to an external power supply;

[0037] A support base 6 is fixedly connected below the liquid extraction pump 504. A plurality of support plates 7 are fixedly arranged below the purification cylinder 1. The number of support plates 7 is two. One side of one of the support plates 7 is connected to the display instrument 404. A base 8 is fixedly connected between the support plate 7 and the support base 6. The detection box 402 is fixedly connected to the base 8 below.

[0038] Specifically, through the detection mechanism 4 arranged in the purification cylinder 1, it is convenient to detect the purified water resources of the secondary water supply purification device, which is beneficial to re - transporting the insufficiently purified water resources to the purification cylinder 1 for filtration and purification. At the same time, the output mechanism 5 arranged in the detection mechanism 4 is convenient for auxiliary sterilization treatment of the purified water resources. At the same time, the support base 6 and the support plate 7 arranged between the liquid extraction pump 504 and the purification cylinder 1 are convenient for improving the stability of the purification cylinder 1 and the liquid extraction pump 504.

[0039] In summary, by means of the above technical solutions of the present utility model, during purification, the water resource of the secondary water supply is conveniently transported to the purification cylinder 1 through the input pipe 206 provided on the purification cylinder 1. Then, the filtering mechanism 2 provided on the purification cylinder 1 facilitates the filtration and purification of the secondary water supply. After purification, it passes through the detection mechanism 4, which facilitates the detection of the water resource after purification by the secondary water supply purification device, and is conducive to transporting the insufficiently purified water resource back to the purification cylinder 1 for filtration and purification again. At the same time, the output mechanism 5 provided on the detection mechanism 4 facilitates the auxiliary sterilization treatment of the purified water resource. The auxiliary mechanism 3 through which the impurities assisted by the filtering mechanism 2 pass facilitates the auxiliary adsorption and cleaning of the impurities filtered by the secondary water supply purification device for a long time, reducing the situation of blockage of the activated carbon plate 202 of the secondary water supply purification device. The cleaning brush 9 provided on the adsorption cover 305 facilitates the auxiliary cleaning of the impurities attached to the surface of the activated carbon plate 202.

[0040] In the present utility model, unless otherwise clearly defined and limited, terms such as "installation", "setting", "connection", "fixation", "swivel connection", etc. shall be understood in a broad sense. For example, it can be a fixed connection, a detachable connection, or integrated; it can be a mechanical connection or an electrical connection; it can be directly connected or indirectly connected through an intermediate medium, and it can be the internal communication of two components or the interaction relationship between two components. Unless otherwise clearly defined, for those of ordinary skill in the art, the specific meanings of the above terms in the present utility model can be understood according to specific circumstances.

[0041] The above are only the preferred embodiments of the present utility model and are not intended to limit the present utility model. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present utility model shall be included within the protection scope of the present utility model.

Claims

1. A secondary water supply purification device, characterized in that, It includes a purification cylinder (1), a filtering mechanism (2) is installed on the inner wall of the purification cylinder (1), auxiliary mechanisms (3) are in contact with both sides of the filtering mechanism (2), the auxiliary mechanisms (3) include several electric telescopic rods (301) fixedly arranged on the inner wall of the purification cylinder (1), the output end of the electric telescopic rod (301) is fixedly connected with a fixing frame (302), an electric guide rail (303) is fixedly installed below the fixing frame (302), an auxiliary frame (304) is connected to the electric guide rail (303) through a moving block, part of the auxiliary frame (304) is in contact with both sides of the filtering frame (201), an adsorption cover (305) is fixed at one end of the auxiliary frame (304), an adsorption hose (306) penetrates through the upper part of the adsorption cover (305), one end of the adsorption hose (306) penetrates through the purification cylinder (1) and is connected with an adsorption pump (307), and the output end of the adsorption pump (307) is connected with a collection box (308); A detection mechanism (4) is connected below the purification cylinder (1), the detection mechanism (4) includes an output pipe (401) penetrating through the lower part of the purification cylinder (1), one end of the output pipe (401) is connected with a detection box (402), a detection instrument (403) penetrates through one side of the detection box (402), the detection instrument (403) is electrically connected with a display instrument (404), a delivery pump (405) is connected to one side of the detection box (402), the output end of the delivery pump (405) is connected with a connecting pipe (406), one end of the connecting pipe (406) penetrates through the upper part of the shielding cover (204), and an output mechanism (5) is installed at one end of the detection mechanism (4).

2. The secondary water supply purification device according to claim 1, characterized in that, The filtering mechanism (2) includes several filtering frames (201) fixedly installed on the inner wall of the purification cylinder (1), activated carbon plates (202) and ion exchange resin plates (203) are respectively placed on the inner walls of the filtering frames (201), a replacement opening is formed on one side of the purification cylinder (1), a shielding cover (204) is installed on the inner wall of the replacement opening, several lock catches (205) are fixedly connected between the shielding cover (204) and the surface of the purification cylinder (1), and an input pipe (206) penetrates through the upper part of the purification cylinder (1).

3. The secondary water supply purification device according to claim 1, characterized in that, The output mechanism (5) includes a control valve one (501) penetrating through one side of the detection box (402), the output end of the control valve one (501) is connected with a delivery pipe (502), the delivery end of the delivery pipe (502) is connected with a disinfector (503), both output ends of the disinfector (503) are connected with liquid extraction pumps (504), the output end of the liquid extraction pump (504) is connected with a drain pipe (505), the output end of the drain pipe (505) is connected with a control valve two (506), and the output end of the control valve two (506) is connected with a discharge pipe (507).

4. The secondary water supply purification device according to claim 3, characterized in that, A support base (6) is fixedly connected below the liquid extraction pump (504). A plurality of support plates (7) are fixedly arranged below the purification cylinder (1). One side of one of the support plates (7) is connected to the display instrument (404). A base (8) is fixedly connected below the support plate (7) and the support base (6).

5. A secondary water supply purification device according to claim 1, characterized in that, A cleaning brush (9) is installed on the inner wall of the adsorption hood (305), and the cleaning brush (9) is in contact with the upper part of the activated carbon plate (202).